Orientations

Phase-change materials for vaccine cold chain applications

When selecting phase-change materials (PCMs), it is important to understand the interactions of the PCMs with the materials with which they may come into contact. PCMs may change the mechanical properties of the material, and a material may impact the phase-change properties (e.g., melting point or latent heat) of the PCM. In this study, we investigated the impact of PCMs on the mechanical and visible properties of materials commonly used in vaccine cold chain equipment (CCE), including refrigerators, cold boxes, and carriers. The materials tested included polypropylene (PP), polyvinyl chloride (PVC), high-density polyethylene (HDPE), high-impact polystyrene (HIPS), copper, aluminum, mild steel,

polyisocyanurate foam, polyurethane foam, enamel appliance paint, and PVC-insulated copper wire. PCMs were classified according to the scheme shown in the figure below. The phase-change materials investigated included water, salt hydrates, paraffins, organic non-paraffins, and a nominal eutectic. Table 1 summarizes the material testing data. We also evaluated the potential hazards to human and environmental health of the PCMs based on information from their safety data sheets (SDS) as well as the useful product life of the PCMs and disposal considerations. Table 2 summarizes the results of the hazards, disposal, and useful product life research.

Auteurs

Langues

  • Anglais

Année de publication

2016

Type

Orientations

Catégories

  • Chaîne d'approvisionnement

Organisations

  • PATH

Mots-clés

  • Boîte isotherme / porte-vaccins
  • Système de distribution
  • Réfrigérateur / congélateur

FREEZE-PREVENTION-NEW-TECH

Vous pouvez trouver plus d’informations sur "FREEZE-PREVENTION-NEW-TECH" dans les rubriques suivantes :

TitreAuteurAnnéeTypeLangue
Innovations in cold chain equipment for immunization supply chainsDenis Maire, Joanie Robertson, Lauren FranzelJournal articleAnglais
Using long-range freeze-preventive vaccine carriers in Nepal: A study of equipment performance, acceptability, systems fit, and costSandeep Kumar, Pat Lennon, Nancy Muller, Surendra Uranw, Mercy Mvundura, Alexandra Sibole, Steven Diesburg, Joe Little, Arindam Ray, Jhalak Sharma Gautam, Rupa Rajbhandari Singh, Nilambar Jha2022Journal articleAnglais
Freeze-preventive vaccine carriers: a field evaluation in NepalPATH2021Case studyAnglais
Field Evaluation of Freeze-Preventive Vaccine Carriers in NepalPATH2020ReportAnglais
Technology update: Freeze-preventive vaccine carriersPATH2018GuidanceAnglais
Phase-change materials for vaccine cold chain applicationsPATH2016GuidanceAnglais
Forecast report: Freeze-safe vaccine carriers—Modeling the potential global marketPATH2016GuidanceAnglais
Cold chain equipment optimisation platform - Technology guide (2023)Gavi, the Vaccine Alliance2023GuidanceAnglais
Report on the Freeze-Preventive Passive Container MeetingUNICEF, PATH2015GuidanceAnglais

Ajouté par: Moderator

Ajouté le: 2017-04-05 06:29:20

Consultations: 5344